👤 A W McGee

🔍 Search 📋 Browse 🏷️ Tags ❤️ Favourites ➕ Add 🧬 Extraction
7
Articles
5
Name variants
Also published as: Abby V McGee, Laura D McGee, M McGee, Paula L McGee
articles
Rachel G Sinkey, Paula L McGee, Akila Subramaniam +10 more · 2026 · Pregnancy hypertension · Elsevier · added 2026-04-24
Hypertensive disorders of pregnancy (HDP) are associated with future cardiovascular disease but mechanisms are not well defined. We examined the association between HDP and atherosclerotic cardiovascu Show more
Hypertensive disorders of pregnancy (HDP) are associated with future cardiovascular disease but mechanisms are not well defined. We examined the association between HDP and atherosclerotic cardiovascular disease (ASCVD) biomarkers 5-10 years after childbirth. Secondary analysis of the NICHD MFMU Network Gestational Diabetes (GDM) Trial Follow-Up study. Participants were recruited and biospecimens obtained 5-10 years after the original trial of treatment for mild GDM. Patients were included if a biospecimen was available and their HDP status was known. We compared patients who experienced HDP to normotensive controls. Outcomes included unadjusted medians and mean concentrations of ASCVD serum biomarkers Apolipoprotein B (ApoB), high-sensitivity C-reactive protein (hs-CRP), and creatinine. Generalized linear models were used to compare concentrations between groups. Of 740 participants in this analysis, 78 had been diagnosed with HDP. Mean duration of follow up after delivery was 7.1 ± 1.3 years for both groups. Unadjusted means of each biomarker were not different between groups. After adjusting for obesity, mean serum creatinine was elevated in women who had been diagnosed with HDP (0.77 mg/dL 95%CI (0.72, 0.82)) compared to controls (0.71 mg/dL 95%CI (0.69, 0.72)), p = 0.02. Adjusted means for ApoB between women with HDP and controls were 64.2 mg/dL (95%CI (59.3, 69.5)) and 60.6 mg/dL (95%CI (58.9, 62.3)), (p = 0.18), and for hs-CRP mg/L were 14.6 (95%CI (11.4, 19.1)) and 14.5 mg/L (95%CI (13.3, 15.9)), (p = 0.91). In patients with HDP compared to normotensive controls, serum creatinine, but not ApoB or hs-CRP, was modestly elevated within 10 years of childbirth. Show less
no PDF DOI: 10.1016/j.preghy.2026.101467
APOB
Laura D McGee, Brandon M Bessen, James J Dollar +5 more · 2026 · Cell communication and signaling : CCS · BioMed Central · added 2026-04-24
no PDF DOI: 10.1186/s12964-026-02885-1
IL27
Shawn Fayer, Riddhiman K Garge, Melissa Hopkins +18 more · 2025 · medRxiv : the preprint server for health sciences · Cold Spring Harbor Laboratory · added 2026-04-24
Multiplexed assays of variant effect (MAVEs) systematically measure variant function but have been limited to cancer cell lines rather than disease-relevant cell types. We developed saturation genome Show more
Multiplexed assays of variant effect (MAVEs) systematically measure variant function but have been limited to cancer cell lines rather than disease-relevant cell types. We developed saturation genome editing in human iPSCs (iPSC-SGE) to introduce variant libraries into a single allele of a target gene while programming the genetic background of the second allele, enabling variant assessment across differentiated cell types and genetic contexts at scale. We edited 1,137 variants into Show less
📄 PDF DOI: 10.1101/2025.11.12.25340127
MYBPC3
Kate Keogh, D A Kenny, P A Alexandre +2 more · 2024 · BMC genomics · BioMed Central · added 2026-04-24
Provision of feed is a major determinant of overall profitability in beef production systems, accounting for up to 75% of the variable costs. Thus, improving cattle feed efficiency, by way of determin Show more
Provision of feed is a major determinant of overall profitability in beef production systems, accounting for up to 75% of the variable costs. Thus, improving cattle feed efficiency, by way of determining the underlying genomic control and subsequently selecting for feed efficient cattle, provides a method through which feed input costs may be reduced. The objective of this study was to undertake gene co-expression network analysis using RNA-Sequence data generated from Longissimus dorsi and liver tissue samples collected from steers of two contrasting breeds (Charolais and Holstein-Friesian) divergent for residual feed intake (RFI), across two consecutive distinct dietary phases (zero-grazed grass and high-concentrate). Categories including differentially expressed genes (DEGs) based on the contrasts of RFI phenotype, breed and dietary source, as well as key transcription factors and proteins secreted in plasma were utilised as nodes of the gene co-expression network. Of the 2,929 DEGs within the network analysis, 1,604 were reported to have statistically significant correlations (≥ 0.80), resulting in a total of 43,876 significant connections between genes. Pathway analysis of clusters of co-expressed genes revealed enrichment of processes related to lipid metabolism (fatty acid biosynthesis, fatty acid β-oxidation, cholesterol biosynthesis), immune function, (complement cascade, coagulation system, acute phase response signalling), and energy production (oxidative phosphorylation, mitochondrial L-carnitine shuttle pathway) based on genes related to RFI, breed and dietary source contrasts. Although similar biological processes were evident across the three factors examined, no one gene node was evident across RFI, breed and diet contrasts in both liver and muscle tissues. However within the liver tissue, the IRX4, NR1H3, HOXA13 and ZNF648 gene nodes, which all encode transcription factors displayed significant connections across the RFI, diet and breed comparisons, indicating a role for these transcription factors towards the RFI phenotype irrespective of diet and breed. Moreover, the NR1H3 gene encodes a protein secreted into plasma from the hepatocytes of the liver, highlighting the potential for this gene to be explored as a robust biomarker for the RFI trait in beef cattle. Show less
no PDF DOI: 10.1186/s12864-024-10151-2
NR1H3
A W McGee, J R Topinka, K Hashimoto +7 more · 2001 · The Journal of neuroscience : the official journal of the Society for Neuroscience · Society for Neuroscience · added 2026-04-24
Membrane-associated guanylate kinases (MAGUKs) are abundant postsynaptic density (PSD)-95/discs large/zona occludens-1 (PDZ)-containing proteins that can assemble receptors and associated signaling en Show more
Membrane-associated guanylate kinases (MAGUKs) are abundant postsynaptic density (PSD)-95/discs large/zona occludens-1 (PDZ)-containing proteins that can assemble receptors and associated signaling enzymes at sites of cell-cell contact, including synapses. PSD-93, a postsynaptic neuronal MAGUK, has three PDZ domains that can bind to specific ion channels, including NMDA delta2 type glutamate receptors, as well as Shaker and inward rectifier type K(+) channels, and can mediate clustering of these channels in heterologous cells. Genetic analyses of Drosophila show that MAGUKs play critical roles in synaptic development because mutations of discs large disrupt the subsynaptic reticulum and block postsynaptic clustering of Shaker K(+) channels. It is uncertain whether MAGUKs play an essential role in the development of central synapses. There are four neuronal MAGUKs with overlapping expression patterns in the mammalian brain; however, we find PSD-93 is the only MAGUK expressed in cerebellar Purkinje neurons. Therefore, we targeted disruption of PSD-93 in mouse. Despite the absence of MAGUK immunoreactivity in Purkinje neurons from the knock-outs, these mice have no structural or functional abnormality in cerebellum. Both the dendritic architecture and the postsynaptic localization of PSD-93 interacting proteins remain intact at light and electron microscopic levels in the knock-outs. Postsynaptic Purkinje cell responses, monosynaptic climbing fiber innervation, and cerebellar-dependent behaviors are also normal. Our data demonstrate that MAGUK proteins of the PSD-93/95 family are not essential for development of certain central synapses but may instead participate in specialized aspects of synaptic signaling and plasticity. Show less
no PDF DOI: 10.1523/JNEUROSCI.21-09-03085.2001
DLG2
J E Brenman, J R Topinka, E C Cooper +5 more · 1998 · The Journal of neuroscience : the official journal of the Society for Neuroscience · Society for Neuroscience · added 2026-04-24
Postsynaptic density-93 (PSD-93)/Chapsyn-110 is a member of the membrane-associated guanylate kinase (MAGUK) family of PDZ domain-containing proteins. MAGUKs are widely expressed in the brain and are Show more
Postsynaptic density-93 (PSD-93)/Chapsyn-110 is a member of the membrane-associated guanylate kinase (MAGUK) family of PDZ domain-containing proteins. MAGUKs are widely expressed in the brain and are critical elements of the cytoskeleton and of certain synapses. In the ultrastructural studies that are described here, PSD-93 localizes to both postsynaptic densities and dendritic microtubules of cerebellar Purkinje neurons. The microtubule localization is paralleled by a high-affinity in vivo interaction of PSD-93 via its guanylate kinase (GK) domain with microtubule-associated protein 1A (MAP1A). GK domain truncations that mimic genetically identified mutations of a Drosophila MAGUK, discs-large, disrupt the GK/MAP-1A interaction. Additional biochemical experiments demonstrate that intact MAGUKs do not bind to MAP1A as effectively as do isolated GK domains. This appears to be attributable to an intramolecular inhibition of the GK domain by the PDZs, because GK binding activity of full-length MAGUKs is partially restored by a variety of PDZ ligands, including the C termini of NMDA receptor 2B, adenomatous polyposis coli (APC), and CRIPT. Beyond demonstrating a novel cytoskeletal link for PSD-93, these experiments support a model in which intramolecular interactions between the multiple domains of MAGUKs regulate intermolecular associations and thereby may play a role in the proper targeting and function of MAGUK proteins. Show less
no PDF DOI: 10.1523/JNEUROSCI.18-21-08805.1998
DLG2
J E Brenman, D S Chao, S H Gee +9 more · 1996 · Cell · Elsevier · added 2026-04-24
Neuronal nitric oxide synthase (nNOS) is concentrated at synaptic junctions in brain and motor endplates in skeletal muscle. Here, we show that the N-terminus of nNOS, which contains a PDZ protein mot Show more
Neuronal nitric oxide synthase (nNOS) is concentrated at synaptic junctions in brain and motor endplates in skeletal muscle. Here, we show that the N-terminus of nNOS, which contains a PDZ protein motif, interacts with similar motifs in postsynaptic density-95 protein (PSD-95) and a related novel protein, PSD-93.nNOS and PSD-95 are coexpressed in numerous neuronal populations, and a PSD-95/nNOS complex occurs in cerebellum. PDZ domain interactions also mediate binding of nNOS to skeletal muscle syntrophin, a dystrophin-associated protein. nNOS isoforms lacking a PDZ domain, identified in nNOSdelta/delta mutant mice, do not associate with PSD-95 in brain or with skeletal muscle sarcolemma. Interaction of PDZ-containing domains therefore mediates synaptic association of nNOS and may play a more general role in formation of macromolecular signaling complexes. Show less
no PDF DOI: 10.1016/s0092-8674(00)81053-3
DLG2